[1] |
ZHOU D, LI P C, ZHANG C M. Offshore CO2-EOR: worldwide progress and a preliminary analysis on its potential in the sedimentary basins off China [J]. Southern Energy Construction, 2015, 2 (3): 1-9. |
[2] |
DOSTAL V, DRISCOLL M J, HEJZLAR P. A supercritical carbon dioxide cycle for next generation nuclear reactors [R]. U.S.A.:Advanced Nuclear Power Technology Program, 2004. |
[3] |
AHN Y, BAE S J, KIM M, et al. Review of supercritical CO2 power cycle technology and current status of research and development [J]. Nuclear Engineering and Technology, 2015, 47(6): 647-661. |
[4] |
SARKAR J, BHATTACHARYYA S. Thermodynamic analyses and optimization of a transcritical N2O refrigeration cycle [J]. International Journal of Refrigeration, 2010, 33(1): 33-40. |
[5] |
SARKAR J. Analyses and optimization of a supercritical N2O Rankine cycle for low-grade heat conversion [J]. Energy, 2015, 81(1): 344-351. |
[6] |
ROVIRA A, MUNOZ-ANTON J, MONTES M J, et al. Optimization of brayton cycles for low-to-moderate grade thermal energy sources [J]. Energy, 2013, 55(1): 403-416. |
[7] |
ROVIRA A, RUBBIA C, VALDES M, et al. Thermodynamic cycles optimised for medium enthalpy units of concentrating solar power [J]. Energy, 2014, 67(4): 176-185. |
[8] |
National Institute of Standards and Technology. Reference fluid thermodynamic and transport properties: NIST standard reference database 23 [S]. Maryland: National Institute of Standards and Technology, 2010. |
[9] |
SARKAR J. Thermodynamic analyses and optimization of a recompression N2O Brayton power cycle [J]. Energy, 2010, 35(8): 3422-3428. |
[10] |
PEREZ J A. Evaluation of ethane as a power conversion system working fluid for fast reactors [D]. U.S.A.: Massachusetts Institute of Technology, 2008. |
[11] |
LUIS C E, JAVIER M A, JOSE M MV P. S-ethane brayton power conversion systems for concentrated solar power plant [J]. Journal of Solar Energy Engineering, 2016, 138(1): 1-12. |
[12] |
CALDERAZZI L, PALIANO P C. Thermal stability of R-134a, R-141b, R-1311, R-7146, R-125 associated with stainless steel as a containing material [J]. International Journal of Refrigeration, 1997, 20(6): 381-389. |
[13] |
WRIGHT S A,PICKARD P S,VERNON M E,et al. Enhancing power cycle efficiency for a supercritical Brayton cycle power system using tunable supercritical gas mixtures: US 20130033044 A1[P]. 2013-02-07. |
[14] |
KULHANEK M, DOSTAL V. Thermodynamic analysis and comparison of supercritical carbon dioxide cycles [C]//Southwest Research Institute. In: Proceedings of Supercritical CO2 Power Cycle Symposium, Boulder, Colorado, 24-25, May 2011. Boulder: Southwest Research Institute, 2011:2-8. |